Cargando…

Molecular analysis of homeostatic iron regulator, transmembrane protease serine-6, and BTB domain-containing protein-9 variants and iron parameters in blood donors

Genetic variants associated with iron homeostasis have been identified, but their association with iron-related indices and variables among different ethnic populations remains controversial. We aimed to explore the genotype frequency and allelic distribution of three iron-metabolism related variant...

Descripción completa

Detalles Bibliográficos
Autores principales: Fawzy, Manal S., Fakhr-Eldeen, Abeer, Abu AlSel, Baraah T., Toraih, Eman A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7809544/
https://www.ncbi.nlm.nih.gov/pubmed/33367529
http://dx.doi.org/10.1042/BSR20202584
_version_ 1783637143447404544
author Fawzy, Manal S.
Fakhr-Eldeen, Abeer
Abu AlSel, Baraah T.
Toraih, Eman A.
author_facet Fawzy, Manal S.
Fakhr-Eldeen, Abeer
Abu AlSel, Baraah T.
Toraih, Eman A.
author_sort Fawzy, Manal S.
collection PubMed
description Genetic variants associated with iron homeostasis have been identified, but their association with iron-related indices and variables among different ethnic populations remains controversial. We aimed to explore the genotype frequency and allelic distribution of three iron-metabolism related variants in homeostatic iron regulator gene (HFE; rs1800562 G/A), transmembrane protease, Serine-6 gene (TMPRSS6; rs855791 A/G), and BTB domain-containing protein-9 gene (BTBD9; rs9357271 C/T) among a sample of the Middle Eastern blood donors and to detect the association of these variants on blood indices, and serum hepcidin/ferritin levels. Real-Time TaqMan genotyping assay for the specified variants was applied for 197 unrelated blood donors. Complete blood picture and serum hepcidin/ferritin levels were assessed. All participants were carriers of rs1800562*G/G genotype for HFE. The frequency of A/A and A/G genotypes of TMPRSS6 rs855791 variant was 55% and 45%, and for C/C, C/T, and T/T of BTBD9 rs9357271, were 15%, 43%, and 42%, respectively. Minor allele frequencies of rs855791*G and rs9357271*C were 0.23 and 0.37. The GGC genotype combination (for HFE/TMPRSS6/BTBD9, respectively) was more frequent in male participants. Higher serum hepcidin and hepcidin/ferritin ratio were observed in TMPRSS6 (A/G) carriers. While subjects with BTBD9 C/T and TT genotypes had lower serum ferritin values and higher levels of hepcidin and hepcidin/ferritin ratio compared with C/C genotype. No significant associations were found with any other blood parameters. In conclusion, TMPRSS6 rs855791 (A/G) and BTBD9 rs9357271 (C/T) variants were prevalent in the present blood donor population and may influence the serum hepcidin and/or ferritin levels.
format Online
Article
Text
id pubmed-7809544
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Portland Press Ltd.
record_format MEDLINE/PubMed
spelling pubmed-78095442021-02-04 Molecular analysis of homeostatic iron regulator, transmembrane protease serine-6, and BTB domain-containing protein-9 variants and iron parameters in blood donors Fawzy, Manal S. Fakhr-Eldeen, Abeer Abu AlSel, Baraah T. Toraih, Eman A. Biosci Rep Molecular Bases of Health & Disease Genetic variants associated with iron homeostasis have been identified, but their association with iron-related indices and variables among different ethnic populations remains controversial. We aimed to explore the genotype frequency and allelic distribution of three iron-metabolism related variants in homeostatic iron regulator gene (HFE; rs1800562 G/A), transmembrane protease, Serine-6 gene (TMPRSS6; rs855791 A/G), and BTB domain-containing protein-9 gene (BTBD9; rs9357271 C/T) among a sample of the Middle Eastern blood donors and to detect the association of these variants on blood indices, and serum hepcidin/ferritin levels. Real-Time TaqMan genotyping assay for the specified variants was applied for 197 unrelated blood donors. Complete blood picture and serum hepcidin/ferritin levels were assessed. All participants were carriers of rs1800562*G/G genotype for HFE. The frequency of A/A and A/G genotypes of TMPRSS6 rs855791 variant was 55% and 45%, and for C/C, C/T, and T/T of BTBD9 rs9357271, were 15%, 43%, and 42%, respectively. Minor allele frequencies of rs855791*G and rs9357271*C were 0.23 and 0.37. The GGC genotype combination (for HFE/TMPRSS6/BTBD9, respectively) was more frequent in male participants. Higher serum hepcidin and hepcidin/ferritin ratio were observed in TMPRSS6 (A/G) carriers. While subjects with BTBD9 C/T and TT genotypes had lower serum ferritin values and higher levels of hepcidin and hepcidin/ferritin ratio compared with C/C genotype. No significant associations were found with any other blood parameters. In conclusion, TMPRSS6 rs855791 (A/G) and BTBD9 rs9357271 (C/T) variants were prevalent in the present blood donor population and may influence the serum hepcidin and/or ferritin levels. Portland Press Ltd. 2021-01-14 /pmc/articles/PMC7809544/ /pubmed/33367529 http://dx.doi.org/10.1042/BSR20202584 Text en © 2021 The Author(s). https://creativecommons.org/licenses/by/4.0/ This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Molecular Bases of Health & Disease
Fawzy, Manal S.
Fakhr-Eldeen, Abeer
Abu AlSel, Baraah T.
Toraih, Eman A.
Molecular analysis of homeostatic iron regulator, transmembrane protease serine-6, and BTB domain-containing protein-9 variants and iron parameters in blood donors
title Molecular analysis of homeostatic iron regulator, transmembrane protease serine-6, and BTB domain-containing protein-9 variants and iron parameters in blood donors
title_full Molecular analysis of homeostatic iron regulator, transmembrane protease serine-6, and BTB domain-containing protein-9 variants and iron parameters in blood donors
title_fullStr Molecular analysis of homeostatic iron regulator, transmembrane protease serine-6, and BTB domain-containing protein-9 variants and iron parameters in blood donors
title_full_unstemmed Molecular analysis of homeostatic iron regulator, transmembrane protease serine-6, and BTB domain-containing protein-9 variants and iron parameters in blood donors
title_short Molecular analysis of homeostatic iron regulator, transmembrane protease serine-6, and BTB domain-containing protein-9 variants and iron parameters in blood donors
title_sort molecular analysis of homeostatic iron regulator, transmembrane protease serine-6, and btb domain-containing protein-9 variants and iron parameters in blood donors
topic Molecular Bases of Health & Disease
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7809544/
https://www.ncbi.nlm.nih.gov/pubmed/33367529
http://dx.doi.org/10.1042/BSR20202584
work_keys_str_mv AT fawzymanals molecularanalysisofhomeostaticironregulatortransmembraneproteaseserine6andbtbdomaincontainingprotein9variantsandironparametersinblooddonors
AT fakhreldeenabeer molecularanalysisofhomeostaticironregulatortransmembraneproteaseserine6andbtbdomaincontainingprotein9variantsandironparametersinblooddonors
AT abualselbaraaht molecularanalysisofhomeostaticironregulatortransmembraneproteaseserine6andbtbdomaincontainingprotein9variantsandironparametersinblooddonors
AT toraihemana molecularanalysisofhomeostaticironregulatortransmembraneproteaseserine6andbtbdomaincontainingprotein9variantsandironparametersinblooddonors